Title of article
Size effects on miniature Stirling cycle cryocoolers Original Research Article
Author/Authors
Xiaoqin Yang، نويسنده , , J.N. Chung، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
9
From page
537
To page
545
Abstract
Size effects on the performance of Stirling cycle cryocoolers were investigated by examining each individual loss associated with the regenerator and combining these effects. For the fixed cycle parameters and given regenerator length scale, it was found that only for a specific range of the hydrodynamic diameter the system can produce net refrigeration and there is an optimum hydraulic diameter at which the maximum net refrigeration is achieved. When the hydraulic diameter is less than the optimum value, the regenerator performance is controlled by the pressure drop loss; when the hydraulic diameter is greater than the optimum value, the system performance is controlled by the thermal losses.
It was also found that there exists an optimum ratio between the hydraulic diameter and the length of the regenerator that offers the maximum net refrigeration. As the regenerator length is decreased, the optimum hydraulic diameter-to-length ratio increases; and the system performance is increased that is controlled by the pressure drop loss and heat conduction loss. Choosing appropriate regenerator characteristic sizes in small-scale systems are more critical than in large-scale ones.
Keywords
Heat exchangers (E) , Helium (B) , Stirling (E)
Journal title
Cryogenics
Serial Year
2005
Journal title
Cryogenics
Record number
1172575
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